Chemistry of Materials

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2 STUDENTS

Introduction to Materials Chemistry – Preparative routes: Conventional – Precursor technique – Preparative routes: Un Conventional – Soncochemistry technique,Combustion technique,Microwave technique,High Pressure -Hydrothermal Technique,Coventional Solid State Technique – Molecular Beam Epitaxy: Monolayers to Multilayers – Pulsed Laser Deposition: Oxide thin films – Pulsed Electron Deposition: From oxides to polymeric films and devices – Sputtering deposited thin films and applications – Crystal growth-Single crystals – Applications of X-ray diffraction – Applications of X-ray Photoelectron spectroscopy – Applications of X-ray Absorption spectroscopy – Applications of Thermal analysis techniques – Applications of Scanning Tunneling microscopy – Applications of Electron Microscopy – Case Study of ZnO – Magnetic materials – Magnetic Materials III & Related Phenomena – Shape Memory Materials – Spintronic Materials – Colossal Magentoresistive Oxides,Giant Magnetoresistive Materials,Tunelling Magnetoresistive Materials,Dilute Magnetic Semicondcutors – High Tc Superconductors – The New Carbon family – Fullerenes and Nanotubes,Graphene – Optoelectronic Materials OLEDS – Inorganic Phosphors – Phosphor Materials – Solar Cells – Interview with C N R Rao and Interview with E C Subba Rao – Perceptions & Projections

Course Curriculum

Introduction to Materials Chemistry Details 55:55
Preparative routes: Conventional –Precursor technique I Details 58:2
Preparative routes: Conventional – Precursor technique II Details 55:20
Preparative routes: Un Conventional – Soncochemistry technique III Details 54:21
Preparative routes: Un Conventional – Soncochemistry technique IV Details 50:51
Preparative routes: Un Conventional -Combustion technique V Details 59:38
Preparative routes: Un Conventional – Microwave technique VI Details 55:56
Preparative routes: High Pressure -Hydrothermal Technique VII Details 57:49
Preparative routes: Coventional Solid State Technique VIII Details 54:22
Molecular Beam Epitaxy: Monolayers to Multilayers Details 57:40
Pulsed Laser Deposition: Oxide thin films Details 54:42
Pulsed Electron Deposition: From oxides to polymeric films and devices I Details 55:34
Sputtering deposited thin films and applications Details 54:13
Crystal growth-Single crystals Details 57:36
Applications of X-ray diffraction Details 1:1:42
Applications of X-ray Photoelectron spectroscopy I Details 56:44
Applications of X-ray Absorption spectroscopy II Details 57:10
Applications of Thermal analysis techniques III Details 57:43
Applications of Scanning Tunneling microscopy IV Details 57:49
Applications of Electron Microscopy V Details 1:2:33
Case Study of ZnO Details 56:31
Magnetic materials I Details 56:7
Magnetic Materials II Details 57:30
Magnetic Materials III & Related Phenomena III Details 56:36
Shape Memory Materials Details 59:18
Spintronic Materials I Colossal Magentoresistive Oxides Details 57:35
Spintronic Materials II Giant Magnetoresistive Materials I Details 54:11
Spintronic Materials III Tunelling Magnetoresistive Materials II Details 48:10
Spintronic Materials IV Dilute Magnetic Semicondcutors III Details 1:22
High Tc Superconductors Details 57:11
The New Carbon family I- Fullerenes and Nanotubes Details 0:58
The New Carbon family II- Graphene I Details 52:19
Optoelectronic Materials I- OLEDS Details 59:37
Optoelectronic Materials I I- OLEDS I Details 57:4
Inorganic Phosphors I Details 55:50
Inorganic Phosphors II Details 40:25
Phosphor Materials Details 57:31
Solar Cells Details 55:4
Interview with C N R Rao and Interview with E C Subba Rao Details 35:33
Perceptions & Projections Details 49:31

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